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swarm/network: fix data race in fetcher_test.go
Problem: Let's say TestA() and TestB() was started right after each other. TestA() called `go Fetcher.run(ctx)` (read: searchTimeout), on test completion the context was cancelled, but the test did not wait for goroutine termination. Test(B) started by modifying searchTimeout (write). Solution: Let's just store searchTimeout on the Fetcher struct and change the package var (default) to const (thread-safe). Alternative (almost) solution: The above could have been solved by (little ugly, more complex) waitGroups. However that would have not work for TestFetcherFactory. As fetcherFactory.New()starts a goroutine inside it's body without providing a way for clear termination. (We did not want to modify the interface for this one, as we think the unclean termination does not cause a problem in this case in production.) fixes ethersphere/go-ethereum#1109
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bad8c1e64c
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13d7b59726
2 changed files with 16 additions and 17 deletions
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@ -26,14 +26,17 @@ import (
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"github.com/ethereum/go-ethereum/swarm/storage"
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)
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var searchTimeout = 1 * time.Second
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const (
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defaultSearchTimeout = 1 * time.Second
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// maximum number of forwarded requests (hops), to make sure requests are not
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// forwarded forever in peer loops
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maxHopCount uint8 = 20
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)
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// Time to consider peer to be skipped.
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// Also used in stream delivery.
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var RequestTimeout = 10 * time.Second
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var maxHopCount uint8 = 20 // maximum number of forwarded requests (hops), to make sure requests are not forwarded forever in peer loops
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type RequestFunc func(context.Context, *Request) (*enode.ID, chan struct{}, error)
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// Fetcher is created when a chunk is not found locally. It starts a request handler loop once and
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@ -47,6 +50,7 @@ type Fetcher struct {
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addr storage.Address // the address of the chunk to be fetched
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offerC chan *enode.ID // channel of sources (peer node id strings)
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requestC chan uint8 // channel for incoming requests (with the hopCount value in it)
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searchTimeout time.Duration
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skipCheck bool
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}
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@ -118,6 +122,7 @@ func NewFetcher(addr storage.Address, rf RequestFunc, skipCheck bool) *Fetcher {
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protoRequestFunc: rf,
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offerC: make(chan *enode.ID),
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requestC: make(chan uint8),
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searchTimeout: defaultSearchTimeout,
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skipCheck: skipCheck,
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}
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}
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@ -232,7 +237,7 @@ func (f *Fetcher) run(ctx context.Context, peers *sync.Map) {
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// if wait channel is not set, set it to a timer
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if requested {
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if wait == nil {
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wait = time.NewTimer(searchTimeout)
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wait = time.NewTimer(f.searchTimeout)
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defer wait.Stop()
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waitC = wait.C
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} else {
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@ -243,8 +248,8 @@ func (f *Fetcher) run(ctx context.Context, peers *sync.Map) {
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default:
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}
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}
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// reset the timer to go off after searchTimeout
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wait.Reset(searchTimeout)
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// reset the timer to go off after defaultSearchTimeout
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wait.Reset(f.searchTimeout)
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}
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}
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doRequest = false
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@ -284,15 +284,11 @@ func TestFetcherRetryOnTimeout(t *testing.T) {
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requester := newMockRequester()
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addr := make([]byte, 32)
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fetcher := NewFetcher(addr, requester.doRequest, true)
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// set searchTimeOut to low value so the test is quicker
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fetcher.searchTimeout = 250 * time.Millisecond
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peersToSkip := &sync.Map{}
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// set searchTimeOut to low value so the test is quicker
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defer func(t time.Duration) {
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searchTimeout = t
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}(searchTimeout)
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searchTimeout = 250 * time.Millisecond
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ctx, cancel := context.WithCancel(context.Background())
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defer cancel()
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@ -359,11 +355,9 @@ func TestFetcherRequestQuitRetriesRequest(t *testing.T) {
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addr := make([]byte, 32)
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fetcher := NewFetcher(addr, requester.doRequest, true)
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// make sure searchTimeout is long so it is sure the request is not retried because of timeout
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defer func(t time.Duration) {
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searchTimeout = t
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}(searchTimeout)
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searchTimeout = 10 * time.Second
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// make sure the searchTimeout is long so it is sure the request is not
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// retried because of timeout
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fetcher.searchTimeout = 10 * time.Second
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peersToSkip := &sync.Map{}
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